Continuous production process for water-absorbent resin powder and powder surface detector used therefor
a production process and technology of water-absorbent resin, which are applied in the direction of liquid/fluent solid measurement, machines/engines, instruments, etc., can solve the problems of high production efficiency, high production cost, and inability to continuously produce water-absorbent resin with narrow particle diameter distribution and high productivity
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example 1
Subsequent to the pulverizing step of the above Production Example, the resultant water-absorbent resin powder (1) was subjected to a surface-modifying treatment (surface-crosslinking treatment). In this surface-crosslinking step, the surface-crosslinking was carried out after the water-absorbent resin powder (1) had once been stored in a constant-quantity-supplying hopper (a) as set in the middle of the conveying step.
The constant-quantity-supplying hopper (a) includes: a tank for storing the water-absorbent resin powder (1); a supplying part which is placed in an upper portion of this tank and serves for receiving the supply of the water-absorbent resin powder (1); a discharging part which is placed in a lower portion of the aforementioned tank and serves for quantifying and discharging the water-absorbent resin powder (1); and a powder quantity detector for measuring the mass of the whole tank being in a state where the water-absorbent resin powder (1) is stored therein.
While the...
example 2
Example 1 was modified as follows. In the surface-modifying step, a surface modification using inorganic fine particles (Aerosil 200, produced by Nippon Aerosil Co., Ltd.) as an additive in a ratio of 0.5 mass % was also carried out jointly with the surface-crosslinking treatment by the aqueous surface-crosslinking agent solution. On that occasion, the inorganic fine particle powder was supplied and added to the water-absorbent resin powder (1) with a constant-quantity-supplying hopper (b). This constant-quantity-supplying hopper (b) includes: a tank for storing the inorganic fine particle powder; a supplying part which is placed in an upper portion of this tank and serves for receiving the supply of the inorganic fine particle powder; a discharging part which is placed in a lower portion of the aforementioned tank and serves for quantifying and discharging the inorganic fine particle powder; and a powder quantity detector which is placed in an upper portion of the aforementioned ta...
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